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短链d(CnT)两种四链体溶液构象间平衡的1H核磁共振研究

1H nuclear magnetic resonance study on equilibrium between two four-stranded solution conformations of short d(CnT).

作者信息

Kanaori K, Maeda A, Kanehara H, Tajima K, Makino K

机构信息

Department of Polymer Science and Engineering, Kyoto Institute of Technology, Japan.

出版信息

Biochemistry. 1998 Sep 15;37(37):12979-86. doi: 10.1021/bi980492g.

Abstract

NMR analysis of d(C4T) showed the slow exchange between two distinct tetramers (each fully symmetric) in solution. For one tetramer, NOE cross-peak patterns characteristic of an i-motif structure (H1'-H1' and H6-H1'/H1'-H6) were observed between C1 and T5, indicating that this tetramer takes a completely intercalated conformation where the T5 residue is stacked on the C1.C1(+) pair of the other duplex (S-form). The other was found to be a tetramer in which one of the duplexes is shifted by one nucleotide unit (R-form), resulting in nonstacking 3' end thymidine residues and an equal number of stacked C.C+ pairs to that of the S-form. The same spectral features were observed for d(C3T) but neither for d(TC3) nor d(TC4), indicative of the critical role of the position of the thymidine residue in the tetrad isomerization. From NMR denaturation profiles, the S-forms were found to be more stable than the R-forms, and the linear relationship between the logarithm of the equilibrium constant (K = [tetramer]/[single]4) and the inverse of temperature (1/T) was confirmed for both forms, indicating conformity to the two-state transition model. Both enthalpy and entropy values of the formation of the S-form from four single strands were more negative than those of the R-form. The enthalpy term should contribute to the stabilization of the S-forms at low temperatures. The difference of the free energy values [DeltaG degrees(S-form) - DeltaG degrees(R-form)] was found to be -2.1 and -2.7 kJ.mol-1 at 20 degreesC for d(C4T) and d(C3T), respectively, explaining the higher stability of the S-forms. With increasing temperature, these two topologies were found to comparably exist at equilibrium in solution with slow exchange via dissociation to the single strands. A biological role of this topological isomerization is also suggested.

摘要

对d(C4T)的核磁共振分析表明,溶液中两种不同的四聚体(每个都完全对称)之间存在缓慢交换。对于一种四聚体,在C1和T5之间观察到了i-基序结构(H1'-H1'和H6-H1'/H1'-H6)特有的核Overhauser效应(NOE)交叉峰模式,这表明该四聚体采取了完全插入的构象,其中T5残基堆积在另一条双链(S型)的C1.C1(+)对上。另一种则是一个四聚体,其中一条双链移位了一个核苷酸单位(R型),导致3'端胸腺嘧啶残基不堆积,且堆积的C.C+对数量与S型相等。对于d(C3T)观察到了相同的光谱特征,但d(TC3)和d(TC4)均未观察到,这表明胸腺嘧啶残基的位置在四分体异构化中起关键作用。从核磁共振变性图谱可知,S型比R型更稳定,并且两种形式均证实了平衡常数的对数(K = [四聚体]/[单链]4)与温度倒数(1/T)之间的线性关系,表明符合两态转变模型。从四条单链形成S型的焓值和熵值均比R型更负。焓项应有助于在低温下稳定S型。在20℃时,d(C4T)和d(C3T)的自由能值差[ΔG°(S型) - ΔG°(R型)]分别为-2.1和-2.7 kJ·mol-1,这解释了S型具有更高的稳定性。随着温度升高,发现这两种拓扑结构在溶液中通过解离为单链而缓慢交换,在平衡状态下相对共存。还提出了这种拓扑异构化的生物学作用。

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